地震波对水位变化的影响:实验数据和模型

Г. Н. Копылова, С. В. Болдина
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引用次数: 3

摘要

1996-2017年,在堪察加YuZ-5井进行了5-10 min的高精度水位测量。在得到的时间序列中,识别了19次震源距离为80 ~ 14600 km的地震(M w = 6.8 ~ 9.1)中地震波通过引起的水位变化(hydrogeoseismic variation - hgsv)。基于HGSV的形态特征,可以区分出四种主要的变化类型:振荡(I);叠加在波动上的水位短暂(长达数十小时)上升(II);短涨(III);考虑了揭示的GHSV类型的发生与地震参数(震级和距离)、地震波的比能量密度和最大速度以及最近地震台站记录的地震动幅频含量的关系。采用数值模拟的方法,结合几个算例分析了高压地下储层的水动力过程。结果表明,被迫和自由在水位波动振幅幅值(第一种和第二种)可能出现由于地下水压力的加剧变化well-water-bearing岩石系统通过表面的地震波时期对应的共振频率(τ= 44.6 s)。水位的上升以及持续几十分钟到几小时(HGSV变异类型II和III)是由于在短时间内增加压力时破坏了井口附近的水流稳态;强烈的局地地震伴有震级为msk-64≥5的地面震动,在距井几百米的半径范围内,由于压力下降,水位(IV型)下降幅度达0.1 bar。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Эффекты сейсмических волн в изменениях уровня воды в скважине: экспериментальные данные и модели
The high-precision water level measurements with a time interval of 5–10 min were carried out in 1996–2017 in the YuZ-5 well, Kamchatka. In the obtained time series, water level variations caused by the passage of seismic waves (hydrogeoseismic variations—HGSV) during 19 earthquakes with M w = 6.8–9.1 that occurred at the epicentral distances of 80–14.6 thousand km are identified. Based on the HGSV morphological features, four main types of these variations are distinguished: oscillations (I); short (up to tens of hours) rises (II) in the water level superimposed on the fluctuations; short rises (III); and long (1.5–3 months) falls in the water level ( IV). The dependence of the occurrence of the revealed GHSV types on the earthquakes’ parameters (magnitude and distance), on the specific energy density and maximum velocities of seismic waves, and on the amplitude-frequency content of ground motion according to the records at the nearest seismic station is con-sidered. Hydrogeodynamic processes of HGSV formation are analyzed by several examples using numerical mod-eling. It is shown that the forced and free fluctuations amplitude in the water level amplitude (types I and II) can arise due to the intensification of the groundwater pressure variations in the well-water-bearing rock system during the passage of surface seismic waves with the periods corresponding to the resonant frequency of the well ( τ = 44.6 s). The rise in the water level in well lasting for tens of minutes to hours (HGSV variation types II and III) is due to the short increase in pressure when the steady state of water flow in the direct vicinity of the well is violated; the strong local earthquakes accompanied by ground shaking with intensity I msk-64 ≥ 5 cause long falls in the water level (type IV) due to pressure drop with amplitudes up to 0.1 bar within a radius up to several hundred meters from the well.
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